官方服务:
资源简介:
Integration of transcriptomics and metabolomics reveals the responses of sugar beet to continuous cropping obstacle
应用场景:
创建时间:
2021-05-18
相关数据集
Data_Sheet_1_Soil bacterial community response to continuous cropping of cotton.docx
IntroductionLong-term continuous cropping may result in the outbreak and proliferation of soil-borne diseases, as well as reduction in annual crop production. Overcoming the obstacles of continuous cr
NIAID Data Ecosystem30
Table_1_Multi-year crop rotation and quicklime application promote stable peanut yield and high nutrient-use efficiency by regulating soil nutrient availability and bacterial/fungal community.XLS
Diversifying cultivation management, including different crop rotation patterns and soil amendment, are effective strategies for alleviating the obstacles of continuous cropping in peanut (Arachis hyp
NIAID Data Ecosystem20
Systematic identification of metabolites controlling gene expression in E. coli
Cellular metabolism controls gene expression through allosteric interactions between metabolites and transcription factors. Methods to detect these regulatory interactions are mostly based on in vitro
NIAID Data Ecosystem10
RNA-Seq of non continuously cropped Codonopsis tangshen
The growth and development of Codonopsis tangshen Oliv. (C. tangshen Oliv.) is affected by cropping system. Here, the effects of non continuous cropping on transcriptome profile of C. tangshen was exa
NIAID Data Ecosystem30
Table_15_Integrated volatile metabolomic and transcriptomic analysis provides insights into the regulation of floral scents between two contrasting varieties of Lonicera japonica.XLSX
Lonicera japonica Thunb., belonging to the Caprifoliaceae family, is an important traditional Chinese medicinal plant. The L. japonica flower (LJF) is widely used in medicine, cosmetics, drinks, and f
NIAID Data Ecosystem10



